Phillip N. Christopher, PhD

Affiliations: 
Chemical Engineering University of California, Riverside, Riverside, CA, United States 
Area:
Heterogeneous catalysis
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"Phillip Christopher"
Mean distance: 10.75
 
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Parents

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Suljo Linic grad student 2006-2011 University of Michigan
 (Design of Nanostructured Silver Catalysts for Selective Heterogeneous Catalytic and Photocatalytic Oxidation Reactions.)
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Publications

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Robatjazi H, Battsengel T, Finzel J, et al. (2024) Dynamic Behavior of Platinum Atoms and Clusters in the Native Oxide Layer of Aluminum Nanocrystals. Acs Nano
Zang W, Lee J, Tieu P, et al. (2024) Distribution of Pt single atom coordination environments on anatase TiO supports controls reactivity. Nature Communications. 15: 998
Lee J, Tieu P, Finzel J, et al. (2023) How Pt Influences H Reactions on High Surface-Area Pt/CeO Powder Catalyst Surfaces. Jacs Au. 3: 2299-2313
Ro I, Qi J, Lee S, et al. (2022) Bifunctional hydroformylation on heterogeneous Rh-WO pair site catalysts. Nature. 609: 287-292
Resasco J, Christopher P. (2020) Atomically Dispersed Pt-group Catalysts: Reactivity, Uniformity, Structural Evolution, and Paths to Increased Functionality. The Journal of Physical Chemistry Letters. 11: 10114-10123
Qi J, Finzel J, Robatjazi H, et al. (2020) Selective Methanol Carbonylation to Acetic Acid on Heterogeneous Atomically Dispersed ReO4/SiO2 Catalysts. Journal of the American Chemical Society
Siemer M, Tomaschun G, Kluener T, et al. (2020) Insights into Spectator-directed Catalysis: CO Adsorption on Amine-capped Platinum Nanoparticles on Oxide Supports. Acs Applied Materials & Interfaces
Asokan C, Thang HV, Pacchioni G, et al. (2020) Reductant composition influences the coordination of atomically dispersed Rh on anatase TiO2 Catalysis Science & Technology. 10: 1597-1601
Zhou L, Martirez JMP, Finzel J, et al. (2020) Light-driven methane dry reforming with single atomic site antenna-reactor plasmonic photocatalysts Nature Energy. 5: 61-70
Asokan C, Yang Y, Dang A, et al. (2020) Low-Temperature Ammonia Production during NO Reduction by CO Is Due to Atomically Dispersed Rhodium Active Sites Acs Catalysis. 10: 5217-5222
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